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GLP-1/GIP chimeric peptides define the structural requirements for specific ligand-receptor interaction of GLP-1.

机译:GLP-1 / GIP嵌合肽定义了GLP-1特定配体-受体相互作用的结构要求。

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摘要

The gastrointestinal hormones glucagon-like peptide-1 (GLP-1) and gastric inhibitory polypeptide (GIP) strongly stimulate insulin release. Despite their high N-terminal sequence similarity, GLP-1 does not bind to the GIP receptor and vice versa. To characterize the domains required for interaction of the peptide ligands with their specific receptors, we performed displacement studies with various synthetic GLP-1/GIP hybrid peptides on RINm5F insulinoma cells. Displacement of 125I-GIP and 125I-GLP-1 was measured using GLP-1/GIP chimeras which comprised GIP and GLP-1 sequences at different positions. The binding affinity to the GLP-1 receptor was found to be sensitive to GIP-like exchanges in the N-terminal 22 amino acids as well as in positions 13 and 15 (loss of affinity 280-fold to more than 1000-fold). C-terminal substitution of the GLP-1 sequence by GIP diminished the affinity towards the GLP-1 receptor only 20-fold. All hybrid peptides investigated showed minimal binding affinity for the GIP receptor, indicating that the entire GIP-sequence (1-31) is important for receptor recognition. These findings provide insight into the structural requirements for the specific interaction of two important insulinotropic peptides with their specific receptors.
机译:胃肠激素胰高血糖素样肽1(GLP-1)和胃抑制多肽(GIP)强烈刺激胰岛素释放。尽管它们的N端序列相似性很高,但GLP-1并不与GIP受体结合,反之亦然。为了表征肽配体与其特异性受体相互作用所需的结构域,我们对RINm5F胰岛素瘤细胞上的各种合成GLP-1 / GIP杂合肽进行了置换研究。使用GLP-1 / GIP嵌合体测量125I-GIP和125I-GLP-1的置换,所述嵌合体在不同位置包含GIP和GLP-1序列。发现对GLP-1受体的结合亲和力对N末端22个氨基酸以及位置13和15的GIP样交换敏感(亲和力损失280倍至超过1000倍)。通过GIP对GLP-1序列进行C端取代,将对GLP-1受体的亲和力降低了20倍。所有研究的杂合肽显示出对GIP受体的最小结合亲和力,表明整个GIP序列(1-31)对于受体识别很重要。这些发现提供了对两个重要的促胰岛素肽与其特异性受体的特异性相互作用的结构要求的见解。

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